| Literature DB >> 29068558 |
Yo Han Choi1, Eun Cheol Ra2, Eun Hyup Kim2, Kwang Young Kim2, Youn Jeong Jang1, Kyeong-Nam Kang2, Sun Hee Choi1, Ji-Hyun Jang2, Jae Sung Lee2.
Abstract
A microwave-assisted hydrothermal synthesis produces ZnFe2 O4 containing Na residue as a precursor to a CO2 hydrogenation catalyst that displays high CO2 conversion and high selectivity to liquid hydrocarbon products in the gasoline and diesel range with high olefin-to-paraffin ratios. Compared to reference catalysts derived from Fe2 O3 and a ZnO-Fe2 O3 physical mixture, the ZnFe2 O4 -derived catalyst contains well-dispersed iron particles with Zn serving as a structural promoter. A profound effect of the residual Na as an electronic promoter is also observed, which improves the selectivity for C5+ hydrocarbons and olefins. The ZnFe2 O4 -derived catalyst exhibits excellent performance in the CO2 Fischer-Tropsch reaction as it forms the active Hägg iron carbide (χ-Fe5 C2 ) phase readily through the in situ carburization of iron.Entities:
Keywords: carbon dioxide; fischer-tropsch synthesis; fuels; hydrogenation; spinel phases
Year: 2017 PMID: 29068558 DOI: 10.1002/cssc.201701437
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928